Dust removal device for textile workshop

By designing automatic cleaning filter components and transmission components, the problem of the filter materials of the textile workshop dust collector needs to be regularly disassembled and washed, and efficient dust removal effect in the textile workshop is achieved.

CN120361647AInactive Publication Date: 2025-07-25NANTONG AISHUANG TEXTILE CO LTD
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Patent Information

Application Number
CN202510862089.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-25
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing textile workshop dust collector filter material needs to be removed and cleaned regularly after long-term filtering of floes, which is time-consuming and labor-intensive and affects the dust removal efficiency.

Method used

A dust removal device including a filter assembly, a cleaning assembly and a transmission assembly is designed. The filter cloth is driven to rotate through the transmission assembly to clean the attached fiber floes into the cleaning assembly to avoid disassembly and cleaning.

Benefits of technology

It realizes automatic cleaning of filter cloth, improves dust removal efficiency, avoids cumbersome dismantling and washing processes, and ensures the dust removal effect of the textile workshop.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of dust removal, and discloses a dust removal device for a textile workshop, which comprises a fan, and further comprises a filter assembly, a dust removal device and a dust removal device, and the protective net is arranged at the top of the filtering assembly. According to the device, air is pumped into the filtering assembly from the textile workshop through the draught fan, air containing batting penetrates through the protective net to enter the filtering assembly, the batting in the air is filtered through the filtering assembly, at the moment, the motor drives the first transmission shaft to rotate, and due to the fact that a first transmission gear is meshed with a third transmission gear, the batting is filtered; in the rotating process, a second transmission gear and a fourth transmission gear drive a filter assembly to enable filter cloth to rotate, the filter cloth enters a cleaning assembly to be cleaned, and the cleaned filter cloth continues to filter fiber batting in gas in the textile workshop, so that the dust removal efficiency of the workshop is guaranteed, and the dust removal efficiency of the textile workshop is improved. Meanwhile, the complexity of detaching and cleaning the filter material is avoided.
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Description

Technical Field

[0001] The present invention belongs to the technical field of dust removal, and specifically relates to a dust removal device for textile workshops. Background Art

[0002] A textile workshop refers to an industrial site dedicated to the production and processing of textiles (such as cotton, linen, silk, chemical fibers, etc.), covering the entire process or part of the processes from fiber raw materials to finished fabrics; its core function is to complete production processes such as spinning, weaving, printing and dyeing, and post-finishing through mechanical, chemical or manual means, and it is required to meet environmental controllability (temperature, humidity, cleanliness), process coherence, and production safety, etc.; during the processing in a textile workshop, due to the short fibers or dust released by fiber raw materials (such as cotton, wool, chemical fibers, etc.) during the processing due to mechanical actions such as friction, fracture, and opening, long-term inhalation can cause respiratory diseases (such as byssinosis), and high-concentration fluff has a risk of combustion and explosion (especially when static electricity accumulates in chemical fibers). Currently, bag filters or cartridge filters are usually used in workshops. However, when the above-mentioned filters are in use, the fluff filtered on the surface gradually increases, reducing the dust removal efficiency. Therefore, it is necessary to regularly remove and clean the filter material, which is time-consuming and laborious, and affects the normal use of the dust collector. Therefore, a dust removal device for textile workshops is proposed. Summary of the Invention

[0003] To solve the problems raised in the above background art, the present invention provides a dust removal device for textile workshops, which solves the problem that the filter material of the existing dust collector gradually increases after long-term filtering of fluff and needs to be regularly removed and cleaned.

[0004] To achieve the above object, the present invention provides the following technical solution: A dust removal device for textile workshops, including a fan, further including: A filtering component, which is installed on the fan; A protective net, which is arranged on the top of the filtering component; A cleaning component, which is arranged on the side of the filtering component; A collection component, which is installed on the side of the cleaning component; A transmission component, which is arranged inside the filtering component and the cleaning component; Among them, the transmission component includes a first transmission shaft arranged inside the cleaning component. A second transmission gear and a first transmission gear are respectively fixedly installed at both ends of the first transmission shaft. A motor is fixedly installed outside the cleaning component, and the output end of the motor is connected to the first transmission shaft; A second transmission shaft is arranged inside the cleaning component. A fourth transmission gear and a third transmission gear are respectively fixedly installed at both ends of the second transmission shaft. The third transmission gear meshes with the first transmission gear; The second transmission gear and the fourth transmission gear are used to drive the filter assembly to clean it.

[0005] Preferably, the filter assembly includes a housing fixedly installed on the top of the blower. A nylon filter cloth is arranged inside the housing. Support members are fixedly installed at both ends of the nylon filter cloth, and card slots are provided on the support members; The second transmission gear and the fourth transmission gear are movably engaged in the card slots.

[0006] Preferably, a support roller for supporting the nylon filter cloth is arranged at one end inside the housing, and a support transmission member is arranged at the other end inside the housing; The support transmission member has the same structure as the transmission assembly.

[0007] Preferably, the nylon filter cloth is in a circular "L" shape under the action of the support roller, the transmission assembly and the support transmission member; Under the action of the second transmission gear, the support transmission member and the support roller, the nylon filter cloth is in a taut state inside the housing, while the nylon filter cloth is in a relaxed state at the cleaning assembly end.

[0008] Preferably, a stabilizing frame is fixedly installed inside the housing. The stabilizing frame is located inside the nylon filter cloth and contacts its inner wall; The blower draws the gas in the textile workshop into the housing and supports the nylon filter cloth through the stabilizing frame.

[0009] Preferably, the cleaning assembly includes a water storage tank fixedly installed on the side of the housing. A transmission frame is movably arranged inside the water storage tank. An eccentric rod is eccentrically fixedly installed in the middle of the first transmission shaft. The top end of the transmission frame is movably connected to the eccentric rod through a connecting member; A clamping member is fixedly installed at the lower end of the transmission frame.

[0010] Preferably, the clamping member is composed of two rods, and the clamping member clamps both sides of the nylon filter cloth; The first transmission shaft and the eccentric rod rotate, and drive the transmission frame to swing reciprocally with the hinge point with the water storage tank as the axis through the connecting member.

[0011] Preferably, a partition plate is fixedly installed inside the water storage tank. The partition plate and the water storage tank form a water storage tank; A protective plate is fixedly installed inside the water storage tank. The nylon filter cloth passes through the gap between the protective plate and the partition plate; Scraping plates are fixedly installed on the inner walls of the protective plate and the partition plate. The opposite ends of the two scraping plates contact the nylon filter cloth.

[0012] Preferably, the collection component includes a water inlet pipe fixedly installed on the side of the water storage tank. A connecting pipe is fixedly installed outside the water inlet pipe, and the water inlet pipe communicates with the inside of the water storage tank through a water inlet. A collection box is connected to the side of the water storage tank through a docking member, and the water level in the water storage tank is kept horizontal with the docking member.

[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: In the present invention, the air is pumped from the textile workshop into the filter component by a blower. The gas containing fluff passes through the protective net and enters the filter component. The fluff in the gas is filtered by the filter component, and the filtered gas is discharged. When more fiber fluff accumulates on the surface of the filter component, at this time, the motor drives the first transmission shaft to rotate. Since the first transmission gear meshes with the third transmission gear, the first transmission shaft and the second transmission shaft rotate synchronously relative to each other. During the rotation, the filter component is driven by the second transmission gear and the fourth transmission gear to make the filter cloth rotate, so that the filter cloth enters the cleaning component for cleaning. The cleaned filter cloth continues to filter the fiber fluff in the gas of the textile workshop, thereby ensuring the dust removal efficiency of the workshop and avoiding the cumbersome process of removing the filter material for cleaning. In the present invention, the air in the textile workshop is pumped into the shell by a blower. The gas passes through the nylon filter cloth to filter the fiber fluff in the gas, and the filtered gas is discharged. As the gas continuously enters, the fiber fluff attached to the surface of the nylon filter cloth gradually increases. At this time, the motor drives the first transmission shaft and the second transmission shaft to rotate synchronously relative to each other. Since the second transmission gear and the fourth transmission gear are movably engaged in the card slot, through the relative synchronous rotation of the second transmission gear and the fourth transmission gear, the nylon filter cloth rotates in the shell and the cleaning component under the action of the support member, the second transmission gear and the fourth transmission gear. By rotating the nylon filter cloth, the area of the fiber fluff attached to the outside of the nylon filter cloth can be rotated into the cleaning component, and the unused area of the nylon filter cloth can be located inside the shell. Furthermore, the dust in the gas of the textile workshop is removed through the unused area of the nylon filter cloth, ensuring the filtering effect of the gas in the textile workshop. In the present invention, the air is pumped from the textile workshop into the shell by a blower. The gas passes through the nylon filter cloth to filter the fiber fluff in the gas. Since the transmission component, the support transmission member and the support roller support the nylon filter cloth, the nylon filter cloth is in a taut state in the shell, so as to block the shell through the nylon filter cloth, ensuring that the gas entering the shell can completely pass through the nylon filter cloth and ensuring the filtering effect of the gas in the textile workshop. The present invention injects water into the water inlet through the water inlet pipe, and the water level in the water storage tank is kept level with the docking member. The gas in the textile workshop is filtered by the nylon filter cloth. As the fiber fluffs attached to the surface of the nylon filter cloth gradually increase, the motor drives the nylon filter cloth to rotate, and the area of the nylon filter cloth attached with fiber fluffs enters the interior of the water storage tank. As the nylon filter cloth continues to rotate, the eccentric rod and the connecting member drive the transmission frame to swing reciprocally with the hinge point of the water storage tank as the axis. Since the clamping member clamps the outside of the nylon filter cloth, the nylon filter cloth can be driven by the clamping member to swing in the water in the water storage tank, so as to clean the fiber fluffs attached to the surface of the nylon filter cloth, thereby improving the cleaning effect of the surface of the nylon filter cloth. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic diagram of the overall external structure of the present invention; Figure 2 is a schematic diagram of the internal structure of the present invention; Figure 3 is the present invention Figure 2 an enlarged schematic diagram of part A in Figure 4 is the present invention Figure 2 an enlarged schematic diagram of part B in Figure 5 is a schematic diagram of the external structure of the present invention; Figure 6 is a schematic diagram of the cooperation structure of the present invention and the second transmission gear; Figure 7 is a schematic diagram of the cooperation structure of the support transmission member and the nylon filter cloth of the present invention; Figure 8 is a schematic diagram of the cooperation structure of the transmission assembly and the water storage tank of the present invention; Figure 9 is a schematic diagram of the cooperation structure of the cleaning assembly and the collection assembly of the present invention; Figure 10 is the present invention Figure 8 an enlarged schematic diagram of part C in

[0015] In the figure: 1, fan; 2, filter assembly; 21, nylon filter cloth; 22, support member; 23, card slot; 24, stabilizing frame; 25, support roller; 26, housing; 3, cleaning assembly; 31, water storage tank; 32, transmission frame; 33, connecting member; 34, clamping member; 4, collection assembly; 41, water inlet pipe; 42, connecting pipe; 43, water inlet; 44, docking member; 45, collection box; 5, protective net; 6, transmission assembly; 64, first transmission gear; 65, second transmission gear; 66, first transmission shaft; 67, eccentric rod; 68, third transmission gear; 69, fourth transmission gear; 60, second transmission shaft; 622, protective plate; 623, partition plate; 624, scraping plate; 7, support transmission member. Detailed implementation mode

[0016] 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 work belong to the scope of protection of the present invention.

[0017] As Figures 1 to 10 shown, the present invention provides a dust removal device for a textile workshop, including a fan 1, and further including: A filtering component 2, which is installed on the fan 1; A protective net 5, which is arranged on the top of the filtering component 2; A cleaning component 3, which is arranged on the side of the filtering component 2; A collection component 4, which is installed on the side of the cleaning component 3; A transmission component 6, which is arranged inside the filtering component 2 and the cleaning component 3; Among them, the transmission component 6 includes a first transmission shaft 66 arranged inside the cleaning component 3. Second transmission gears 65 and first transmission gears 64 are fixedly installed at both ends of the first transmission shaft 66. A motor is fixedly installed outside the cleaning component 3, and the output end of the motor is connected to the first transmission shaft 66; A second transmission shaft 60 is arranged inside the cleaning component 3. Fourth transmission gears 69 and third transmission gears 68 are fixedly installed at both ends of the second transmission shaft 60. The third transmission gear 68 meshes with the first transmission gear 64; The second transmission gear 65 and the fourth transmission gear 69 are used to drive the filtering component 2 to clean it.

[0018] The air is drawn from the textile workshop into the filtering component 2 through the fan 1. The gas containing fluff passes through the protective net 5 and enters the filtering component 2. The fluff in the gas is filtered by the filtering component 2, and the filtered gas is discharged. When more fiber fluff is filtered on the surface of the filtering component 2, at this time, the motor drives the first transmission shaft 66 to rotate. Since the first transmission gear 64 meshes with the third transmission gear 68, the first transmission shaft 66 and the second transmission shaft 60 rotate synchronously relative to each other. During the rotation process, the filtering component 2 is driven by the second transmission gear 65 and the fourth transmission gear 69 to make the filter cloth rotate, so that the filter cloth enters the cleaning component 3 for cleaning. The cleaned filter cloth continues to filter the fiber fluff in the gas of the textile workshop, thereby ensuring the dust removal efficiency of the workshop and avoiding the trouble of removing and cleaning the filter material.

[0019] As Figures 5 - 9As shown in the figure, the filtering component 2 includes a housing 26 fixedly installed on the top of the fan 1. Inside the housing 26, a nylon filter cloth 21 is provided. At both ends of the nylon filter cloth 21, support members 22 are fixedly installed, and clamping grooves 23 are formed on the support members 22. The second transmission gear 65 and the fourth transmission gear 69 are movably engaged in the clamping groove 23.

[0020] The gas in the textile workshop is drawn into the housing 26 by the fan 1. The gas passes through the nylon filter cloth 21 to filter the fiber fluffs in the gas, and the filtered gas is discharged. As the gas continuously enters, the fiber fluffs attached to the surface of the nylon filter cloth 21 gradually increase. At this time, the motor drives the first transmission shaft 66 and the second transmission shaft 60 to rotate synchronously relative to each other. Since the second transmission gear 65 and the fourth transmission gear 69 are movably engaged in the clamping groove 23, through the relative synchronous rotation of the second transmission gear 65 and the fourth transmission gear 69, the nylon filter cloth 21 rotates in the housing 26 and the cleaning component 3 under the action of the support members 22, the second transmission gear 65, and the fourth transmission gear 69. By rotating the nylon filter cloth 21, the area of the fiber fluffs attached to the outside of the nylon filter cloth 21 can be rotated into the cleaning component 3, and the unused area of the nylon filter cloth 21 can be located inside the housing 26. Furthermore, the gas in the textile workshop is dust-removed through the unused area of the nylon filter cloth 21, ensuring the gas filtration effect in the textile workshop.

[0021] At the same time, differential pressure sensors are arranged at the top and bottom of the nylon filter cloth 21 on the inner wall of the housing 26. The differential pressure sensors reflect the resistance of the fluid passing through the nylon filter cloth 21 by measuring the gas pressure difference on both sides of the nylon filter cloth 21. The poorer the air permeability of the filter plate, the greater the resistance when the fluid passes through, and the differential pressure will also increase accordingly. By presetting the value of the differential pressure sensor, when the resistance of the nylon filter cloth 21 reaches the set value, the motor can be started to drive the nylon filter cloth 21 to rotate and clean the nylon filter cloth 21.

[0022] As Figures 5 - 7 shown, at one end inside the housing 26, a support roller 25 for supporting the nylon filter cloth 21 is provided, and at the other end inside the housing 26, a support transmission member 7 is provided. The support transmission member 7 has the same structure as the transmission component 6. The nylon filter cloth 21 is in an annular "L" shape under the action of the support roller 25, the transmission component 6, and the support transmission member 7. Under the action of the second transmission gear 65, the support transmission member 7, and the support roller 25, the nylon filter cloth 21 is in a taut state inside the housing 26, while the nylon filter cloth 21 is in a relaxed state at the end of the cleaning component 3. A stabilizing frame 24 is fixedly installed inside the housing 26. The stabilizing frame 24 is located inside the nylon filter cloth 21 and contacts its inner wall. The fan 1 sucks the gas in the textile workshop into the housing 26 and supports the nylon filter cloth 21 through the stabilizing frame 24.

[0023] By starting the fan 1 to extract air from the textile workshop, the gas enters the housing 26. The gas passes through the nylon filter cloth 21 to filter the fiber fluff in the gas. Since the transmission assembly 6, the support transmission member 7 and the support roller 25 support the nylon filter cloth 21, the nylon filter cloth 21 is in a taut state inside the housing 26, so as to block the housing 26 through the nylon filter cloth 21, ensuring that the gas entering the housing 26 can completely pass through the nylon filter cloth 21 and guaranteeing the filtering effect of the gas in the textile workshop. At the same time, the stabilizing frame 24 supports the nylon filter cloth 21 located inside the housing 26 to prevent the nylon filter cloth 21 from deforming under the influence of the gas, resulting in the nylon filter cloth 21 being unable to fill the inside of the housing 26 and thus affecting the gas dust removal effect.

[0024] As Figures 6 - 8 shown, the cleaning assembly 3 includes a water storage tank 31 fixedly installed on the side of the housing 26. A transmission frame 32 is movably arranged inside the water storage tank 31. An eccentric rod 67 is eccentrically fixedly installed in the middle of the first transmission shaft 66. The top end of the transmission frame 32 is movably connected to the eccentric rod 67 through a connecting piece 33. A clamping member 34 is fixedly installed at the lower end of the transmission frame 32. The clamping member 34 consists of two rods and clamps both sides of the nylon filter cloth 21. The first transmission shaft 66 and the eccentric rod 67 rotate, and the connecting piece 33 drives the transmission frame 32 to swing reciprocally with the hinge point with the water storage tank 31 as the axis. A partition plate 623 is fixedly installed inside the water storage tank 31, and the partition plate 623 and the water storage tank 31 form a water storage tank. A protective plate 622 is fixedly installed inside the water storage tank 31, and the nylon filter cloth 21 passes through the gap between the protective plate 622 and the partition plate 623. Scraper plates 624 are fixedly installed on the inner walls of the protective plate 622 and the partition plate 623, and the opposite ends of the two scraper plates 624 are in contact with the nylon filter cloth 21. The collection assembly 4 includes a water inlet pipe 41 fixedly installed on the side of the water storage tank 31. A connecting pipe 42 is fixedly installed outside the water inlet pipe 41, and the water inlet pipe 41 is communicated with the inside of the water storage tank 31 through a water inlet 43. A collection box 45 is connected to the side of the water storage tank 31 through a docking member 44, and the water level in the water storage tank is kept level with the docking member 44.

[0025] It is connected to a water pump through a connecting pipe 42, and water is injected into the water inlet 43 through a water inlet pipe 41. The water level in the water storage tank 31 is kept level with the docking part 44. The gas in the textile workshop is filtered by a nylon filter cloth 21. As the fiber fluffs attached to the surface of the nylon filter cloth 21 gradually increase, the motor drives the nylon filter cloth 21 to rotate, and the area of the nylon filter cloth 21 with attached fiber fluffs enters the interior of the water storage tank 31. As the nylon filter cloth 21 continues to rotate, the eccentric rod 67 and the connecting part 33 drive the transmission frame 32 to swing reciprocally with the hinge point with the water storage tank 31 as the axis. Since the clamping part 34 clamps the outside of the nylon filter cloth 21, the nylon filter cloth 21 can be driven by the clamping part 34 to swing in the water in the water storage tank 31, cleaning the fiber fluffs attached to the surface of the nylon filter cloth 21, thereby improving the cleaning effect of the surface of the nylon filter cloth 21; As the nylon filter cloth 21 continues to rotate, the cleaned nylon filter cloth 21 enters the gap between the protective plate 622 and the partition plate 623, and then the water outside the nylon filter cloth 21 is scraped off by the scraper 624, and then it can enter the housing 26 to filter the fiber fluffs in the gas. The cleaned fiber fluffs float on the water surface in the water storage tank 31, and the protective plate 622 protects the cleaned nylon filter cloth 21 to prevent the fluffs floating on the water surface from adhering to the cleaned nylon filter cloth 21.

[0026] Water is continuously injected into the water storage tank 31 through the water inlet pipe 41, and the fluffs floating on the water surface enter the collection box 45 with the water flow for collection.

[0027] The working principle and usage process of the present invention: Air is pumped from the textile workshop into the filtering assembly 2 through the fan 1. The gas containing fluffs passes through the protective net 5 and enters the filtering assembly 2. The fluffs in the gas are filtered by the filtering assembly 2, and the filtered gas is discharged. When more fiber fluffs are filtered on the surface of the filtering assembly 2, at this time, the motor drives the first transmission shaft 66 to rotate. Since the first transmission gear 64 meshes with the third transmission gear 68, the first transmission shaft 66 and the second transmission shaft 60 rotate synchronously and relatively. During the rotation process, the second transmission gear 65 and the fourth transmission gear 69 drive the filtering assembly 2 to make the filter cloth rotate, so that the filter cloth enters the cleaning assembly 3 for cleaning, and the cleaned filter cloth continues to filter the fiber fluffs in the gas in the textile workshop, thereby ensuring the dust removal efficiency of the workshop and avoiding the cumbersome process of removing the filter material for cleaning; The air in the textile workshop is drawn into the housing 26 by the fan 1. The air passes through the nylon filter cloth 21 to filter the fiber fluffs in the air, and the filtered air is discharged. As the air continuously enters, the fiber fluffs attached to the surface of the nylon filter cloth 21 gradually increase. At this time, the motor drives the first transmission shaft 66 and the second transmission shaft 60 to rotate synchronously relative to each other. Since the second transmission gear 65 and the fourth transmission gear 69 are movably engaged in the card slot 23, through the relative synchronous rotation of the second transmission gear 65 and the fourth transmission gear 69, the nylon filter cloth 21 rotates in the housing 26 and the cleaning assembly 3 under the action of the support member 22, the second transmission gear 65, and the fourth transmission gear 69. By rotating the nylon filter cloth 21, the area of the fiber fluffs attached to the outside of the nylon filter cloth 21 can be rotated into the cleaning assembly 3, and the unused area of the nylon filter cloth 21 can be located inside the housing 26. Then, the air in the textile workshop can be dust-removed through the unused area of the nylon filter cloth 21, ensuring the filtering effect of the air in the textile workshop; Start the fan 1 to extract air from the textile workshop. The air enters the housing 26. The air passes through the nylon filter cloth 21 to filter the fiber fluffs in the air. Since the transmission assembly 6, the support transmission member 7, and the support roller 25 support the nylon filter cloth 21, the nylon filter cloth 21 is in a taut state inside the housing 26, so as to block the housing 26 through the nylon filter cloth 21, ensuring that the air entering the housing 26 can completely pass through the nylon filter cloth 21 and ensuring the filtering effect of the air in the textile workshop; At the same time, the nylon filter cloth 21 located inside the housing 26 is supported by the stabilizing frame 24 to prevent the nylon filter cloth 21 from deforming under the influence of the air, resulting in the nylon filter cloth 21 being unable to fill the housing 26 and further affecting the gas dust-removal effect; Connect to the water pump through the connecting pipe 42, inject water into the water inlet 43 through the water inlet pipe 41 and the water inlet 43, and the water level in the water storage tank 31 is kept level with the docking member 44. Filter the air in the textile workshop through the nylon filter cloth 21. As the fiber fluffs attached to the surface of the nylon filter cloth 21 gradually increase, the motor drives the nylon filter cloth 21 to rotate, and the area of the nylon filter cloth 21 with attached fiber fluffs enters the interior of the water storage tank 31. As the nylon filter cloth 21 continues to rotate, the eccentric rod 67 and the connecting member 33 drive the transmission frame 32 to swing reciprocally around the hinge point with the water storage tank 31 as the axis. Since the clamping member 34 clamps the outside of the nylon filter cloth 21, the nylon filter cloth 21 can be driven to swing in the water in the water storage tank 31 through the clamping member 34 to clean the fiber fluffs attached to the surface of the nylon filter cloth 21, thereby improving the cleaning effect of the surface of the nylon filter cloth 21; As the nylon filter cloth 21 continues to rotate, the cleaned nylon filter cloth 21 enters the gap between the protective plate 622 and the partition plate 623, and then the water on the outside of the nylon filter cloth 21 is scraped off by the scraper 624, and then it can enter the housing 26 to filter the fiber fluff in the gas. The cleaned fiber fluff floats on the water surface in the water storage tank 31, and the protective plate 622 protects the cleaned nylon filter cloth 21 to prevent the fluff floating on the water surface from adhering to the cleaned nylon filter cloth 21; The water storage tank 31 is continuously filled with water through the water inlet pipe 41, and the fluff floating on the water surface enters the collection box 45 with the water flow for collection.

[0028] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0029] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A dust removal device for a textile workshop, comprising a fan (1), characterized in that, It further includes: A filtering component (2), which is installed on the blower (1); A protective net (5), which is arranged on the top of the filtering component (2); A cleaning component (3), which is arranged on the side of the filtering component (2); A collection component (4), which is installed on the side of the cleaning component (3); A transmission component (6), which is arranged inside the filtering component (2) and the cleaning component (3); Among them, the transmission component (6) includes a first transmission shaft (66) arranged inside the cleaning component (3). A second transmission gear (65) and a first transmission gear (64) are respectively fixedly installed at both ends of the first transmission shaft (66). A motor is fixedly installed outside the cleaning component (3), and the output end of the motor is connected to the first transmission shaft (66); A second transmission shaft (60) is arranged inside the cleaning component (3). A fourth transmission gear (69) and a third transmission gear (68) are respectively fixedly installed at both ends of the second transmission shaft (60). The third transmission gear (68) meshes with the first transmission gear (64); The second transmission gear (65) and the fourth transmission gear (69) are used to drive the filtering component (2) for cleaning; 2. The dust removal device for textile workshops according to claim 1, characterized in that: The filtering component (2) includes a housing (26) fixedly installed on the top of the blower (1). A nylon filter cloth (21) is arranged inside the housing (26). Support members (22) are fixedly installed at both ends of the nylon filter cloth (21), and a card slot (23) is formed on the support members (22); The second transmission gear (65) and the fourth transmission gear (69) are movably engaged in the card slot (23); 3. The dust removal device for a textile workshop according to claim 2, characterized in that: A support roller (25) for supporting the nylon filter cloth (21) is arranged at one end inside the housing (26), and a support transmission member (7) is arranged at the other end inside the housing (26); The support transmission member (7) has the same structure as the transmission component (6); 4. The dust removal device for textile workshops according to claim 3, characterized in that: The nylon filter cloth (21) is in a circular "L" shape under the action of the support roller (25), the transmission component (6) and the support transmission member (7); Under the action of the second transmission gear (65), the support transmission member (7) and the support roller (25), the nylon filter cloth (21) is in a taut state inside the housing (26), while the nylon filter cloth (21) is in a relaxed state at the end of the cleaning component (3); 5. The dust removal device for textile workshops according to claim 4, characterized in that: A stabilizing frame (24) is fixedly installed inside the housing (26), and the stabilizing frame (24) is located inside the nylon filter cloth (21) and contacts its inner wall; The blower (1) sucks the gas in the textile workshop into the housing (26), and the nylon filter cloth (21) is supported by the stabilizing frame (24).

6. The dust removal device for a textile workshop according to claim 2, wherein: The cleaning component (3) includes a water storage tank (31) fixedly installed on the side of the housing (26). A transmission frame (32) is movably arranged inside the water storage tank (31). An eccentric rod (67) is eccentrically fixedly installed in the middle of the first transmission shaft (66). The top end of the transmission frame (32) is movably connected to the eccentric rod (67) through a connecting piece (33); A clamping piece (34) is fixedly installed at the lower end of the transmission frame (32).

7. The dust removal device for textile workshops according to claim 6, characterized in that: The clamping piece (34) is composed of two rods, and the clamping piece (34) clamps both sides of the nylon filter cloth (21); The first transmission shaft (66) and the eccentric rod (67) rotate, and drive the transmission frame (32) to swing reciprocally around the hinge point with the water storage tank (31) as the axis through the connecting piece (33).

8. The dust removal device for a textile workshop according to claim 7, characterized in that: A partition plate (623) is fixedly installed inside the water storage tank (31), and the partition plate (623) and the water storage tank (31) form the water storage tank; A protection plate (622) is fixedly installed inside the water storage tank (31), and the nylon filter cloth (21) passes through the gap between the protection plate (622) and the partition plate (623); Scraping plates (624) are fixedly installed on the inner walls of the protection plate (622) and the partition plate (623), and the opposite ends of the two scraping plates (624) are in contact with the nylon filter cloth (21).

9. The dust removal device for textile workshops according to claim 8, characterized in that: The collection component (4) includes a water inlet pipe (41) fixedly installed on the side of the water storage tank (31). A connecting pipe (42) is fixedly installed on the outside of the water inlet pipe (41). The water inlet pipe (41) is internally communicated with the water storage tank (31) through a water inlet (43); A collection box (45) is connected to the side of the water storage tank (31) through a docking piece (44), and the water level in the water storage tank is kept level with the docking piece (44).